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用于高效CO光还原的双功能集成双单原子定制

Dual-Single-Atom Tailoring with Bifunctional Integration for High-Performance CO Photoreduction.

作者信息

Cheng Lei, Yue Xiaoyang, Wang Linxi, Zhang Dainan, Zhang Peng, Fan Jiajie, Xiang Quanjun

机构信息

State Key Laboratory of Electronic Thin Film and Integrated Devices, School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 610054, P. R. China.

Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou, 313001, P. R. China.

出版信息

Adv Mater. 2021 Dec;33(49):e2105135. doi: 10.1002/adma.202105135. Epub 2021 Oct 7.

Abstract

Single-atom photocatalysis has been demonstrated as a novel strategy to promote heterogeneous reactions. There is a diversity of monoatomic metal species with specific functions; however, integrating representative merits into dual-single-atoms and regulating cooperative photocatalysis remain a pressing challenge. For dual-single-atom catalysts, enhanced photocatalytic activity would be realized through integrating bifunctional properties and tuning the synergistic effect. Herein, dual-single-atoms supported on conjugated porous carbon nitride polymer are developed for effective photocatalytic CO reduction, featuring the function of cobalt (Co) and ruthenium (Ru). A series of in situ characterizations and theoretical calculations are conducted for quantitative analysis of structure-performance correlation. It is concluded that the active Co sites facilitate dynamic charge transfer, while the Ru sites promote selective CO surface-bound interaction during CO photoreduction. The combination of atom-specific traits and the synergy between Co and Ru lead to the high photocatalytic CO conversion with corresponding apparent quantum efficiency (AQE) of 2.8% at 385 nm, along with a high turnover number (TON) of more than 200 without addition of any sacrificial agent. This work presents an example of identifying the roles of different single-atom metals and regulating the synergy, where the two metals with unique properties collaborate to further boost the photocatalytic performance.

摘要

单原子光催化已被证明是促进多相反应的一种新策略。存在多种具有特定功能的单原子金属物种;然而,将代表性优点整合到双单原子中并调节协同光催化仍然是一个紧迫的挑战。对于双单原子催化剂,可通过整合双功能特性和调节协同效应来实现增强的光催化活性。在此,开发了负载在共轭多孔氮化碳聚合物上的双单原子,用于有效的光催化CO还原,具有钴(Co)和钌(Ru)的功能。进行了一系列原位表征和理论计算,以对结构-性能相关性进行定量分析。得出的结论是,活性Co位点促进动态电荷转移,而Ru位点在CO光还原过程中促进选择性CO表面结合相互作用。原子特异性特征与Co和Ru之间的协同作用相结合,导致高光催化CO转化率,在385 nm处具有2.8%的相应表观量子效率(AQE),以及在不添加任何牺牲剂的情况下超过200的高周转数(TON)。这项工作展示了一个识别不同单原子金属的作用并调节协同作用的例子,其中具有独特性质的两种金属协同合作以进一步提高光催化性能。

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